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首页> 外文期刊>Arabian journal of geosciences >Finite element analysis of the propagation of Earth's surface deformation as a consequence of normal dip-slip offshore fault rupture
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Finite element analysis of the propagation of Earth's surface deformation as a consequence of normal dip-slip offshore fault rupture

机译:普通浸水海上断裂破裂后地球表面变形传播有限元分析

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摘要

This paper addresses the deformation response of seabed sands subject to underlying normal fault movement. This problem is relevant to the design of overlying offshore structures and subsea oil/gas pipelines connecting offshore platforms to the shoreline. The mechanism of the fault propagation in overlying seabed deposits is examined using 2D finite element modeling. Abaqus (c) is used as a numerical platform in modeling this complex problem, while accounting for nonlinear soil behavior with strain softening. Different dip angles and vertical fault displacements of up to 10% of the soil layer thickness were considered. The results include the effect of the relative density of the seabed sands and the soil layer thickness on the extent and magnitude of ground surface deformations. The required bedrock displacement/offset for the rupture to reach the surface and the length and location of the distorted zone are also investigated. Based on the parametric analyses and results presented in this paper, observations related to the potential magnitudes and extents of surface deformations for various conditions of seabed densities and thicknesses are provided. These would be of importance in determining likely effects of distortion/loading on pipelines and offshore structures crossing the fault zone.
机译:本文解决了海底砂的变形响应,受到潜在的正常故障运动。这个问题与将离岸平台连接到海岸线的覆盖海上结构和海底石油/天然气管道的设计有关。使用2D有限元建模检查覆盖海底沉积物中的断层传播机制。 ABAQUS(C)用作模拟该复杂问题的数值平台,同时占菌株软化的非线性土壤行为。考虑了不同的倾角和垂直故障位移高达10%的土层厚度。结果包括海底砂和土层厚度的相对密度对地面变形程度和大小的影响。还研究了所需的基岩位移/偏移,用于到达表面和扭曲区域的长度和位置。基于本文呈现的参数分析和结果,提供了与潜在量大和表面变形的潜在量大和厚度条件相关的观察结果。这些在确定扭曲/装载对流管和过境区的海上结构的可能性的重要性是重要的。

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